BACKGROUND: Traumatic approaches, such as sacrifice and perfusion sampling, have been used to evaluate efficiency of stem cell transplantation. However, these methods are not applicable to human studies. Cell tracing...BACKGROUND: Traumatic approaches, such as sacrifice and perfusion sampling, have been used to evaluate efficiency of stem cell transplantation. However, these methods are not applicable to human studies. Cell tracing, in combination with non-invasive imaging technology, can be utilized to trace cell survival following transplantation to evaluate the efficacy of cell transplantation therapy. OBJECTIVE: To explore feasibility of magnetic resonance imaging (MRI) to observe in vivo repair of injured sciatic nerves following feridex and polylysine (FE-PLL) complex-labeled bone marrow stromal cell (BMSC) transplantation. DESIGN, TIME AND SE'I-rlNG: A randomized, controlled, animal experiment was performed at the Laboratory of the Department of Neurosurgery, Zhujiang Hospital from March to December 2008. MATERIALS: Feridex was purchased from Advanced Magnetic, USA, and polylysine was purchased from Sigma, USA. METHODS: BMSCs were harvested from adult rabbit femurs and were cultured in vitro with neural stem cell culture medium, leukemia inhibitory factor, and basic fibroblast growth factor. Bone marrow stromal cell-derived neural stem cells (BMSC-D-NSCs) were obtained and labeled with FE-PLL complex. The right sciatic nerve (0.8 mm) was excised from healthy, New Zealand rabbits, aged 1.5 months, and the epineuria of distal stumps underwent turnover and were anastomosed at the proximal ends. FE-PLL labeled BMSC-D-NSC suspension or culture medium was transplanted into the epineunal lumen using a microsyringe. The left sciatic nerve was left intact and sewed as the normal control. MAIN OUTCOME MEASURES: Cellular morphology, proliferation, and differentiation, as well as expression of nestin and neuron-specific enolase (NSE), of BMSCs-D-NSCs were observed. Efficacy of FE-PLL labeling and effects on cells were measured. In addition, neural regeneration at 2, 8, and 16 weeks following transplantation was observed by MRI. Histopathology and mean number of regenerated nerve fibers in the pr展开更多
目的探索简单、无细胞外铁产生的超低微浓度菲立磁-硫酸鱼精蛋白标记骨髓间充质干细胞(MSCs)方法。方法贴壁法培养大鼠MSCs。待3代细胞汇合至80%~90%时,更换无血清培养液,根据菲立磁和硫酸鱼精蛋白的不同浓度分为4组:A组[(7.50∶1.00)...目的探索简单、无细胞外铁产生的超低微浓度菲立磁-硫酸鱼精蛋白标记骨髓间充质干细胞(MSCs)方法。方法贴壁法培养大鼠MSCs。待3代细胞汇合至80%~90%时,更换无血清培养液,根据菲立磁和硫酸鱼精蛋白的不同浓度分为4组:A组[(7.50∶1.00)μg/ml]、B组[(10.00∶1.20)μg/ml];C组[(15.00∶1.80)μl/ml]和空白对照组,加入培养液,混匀,5%CO2孵育15min,补加血清后孵育至次日。检测细胞标记率、细胞内外铁、细胞活力和标记细胞MR信号。结果 B组可有效标记大鼠MSCs,普鲁士蓝染色阳性率100%,无细胞外铁产生,铁颗粒分布于溶酶体内。4组间台盼蓝拒染率差异无统计学意义(P>0.05);体外MR GRE T2*WI序列可检测到1×104个标记细胞。结论使用超低微浓度菲立磁10.00μg/ml与鱼精蛋白1.20μg/ml可有效标记大鼠MSCs,体外MR可检测到1×104个标记细胞。展开更多
基金the Natural Science Foundation of Guangdong Province, No. 7301061
文摘BACKGROUND: Traumatic approaches, such as sacrifice and perfusion sampling, have been used to evaluate efficiency of stem cell transplantation. However, these methods are not applicable to human studies. Cell tracing, in combination with non-invasive imaging technology, can be utilized to trace cell survival following transplantation to evaluate the efficacy of cell transplantation therapy. OBJECTIVE: To explore feasibility of magnetic resonance imaging (MRI) to observe in vivo repair of injured sciatic nerves following feridex and polylysine (FE-PLL) complex-labeled bone marrow stromal cell (BMSC) transplantation. DESIGN, TIME AND SE'I-rlNG: A randomized, controlled, animal experiment was performed at the Laboratory of the Department of Neurosurgery, Zhujiang Hospital from March to December 2008. MATERIALS: Feridex was purchased from Advanced Magnetic, USA, and polylysine was purchased from Sigma, USA. METHODS: BMSCs were harvested from adult rabbit femurs and were cultured in vitro with neural stem cell culture medium, leukemia inhibitory factor, and basic fibroblast growth factor. Bone marrow stromal cell-derived neural stem cells (BMSC-D-NSCs) were obtained and labeled with FE-PLL complex. The right sciatic nerve (0.8 mm) was excised from healthy, New Zealand rabbits, aged 1.5 months, and the epineuria of distal stumps underwent turnover and were anastomosed at the proximal ends. FE-PLL labeled BMSC-D-NSC suspension or culture medium was transplanted into the epineunal lumen using a microsyringe. The left sciatic nerve was left intact and sewed as the normal control. MAIN OUTCOME MEASURES: Cellular morphology, proliferation, and differentiation, as well as expression of nestin and neuron-specific enolase (NSE), of BMSCs-D-NSCs were observed. Efficacy of FE-PLL labeling and effects on cells were measured. In addition, neural regeneration at 2, 8, and 16 weeks following transplantation was observed by MRI. Histopathology and mean number of regenerated nerve fibers in the pr
文摘目的探索简单、无细胞外铁产生的超低微浓度菲立磁-硫酸鱼精蛋白标记骨髓间充质干细胞(MSCs)方法。方法贴壁法培养大鼠MSCs。待3代细胞汇合至80%~90%时,更换无血清培养液,根据菲立磁和硫酸鱼精蛋白的不同浓度分为4组:A组[(7.50∶1.00)μg/ml]、B组[(10.00∶1.20)μg/ml];C组[(15.00∶1.80)μl/ml]和空白对照组,加入培养液,混匀,5%CO2孵育15min,补加血清后孵育至次日。检测细胞标记率、细胞内外铁、细胞活力和标记细胞MR信号。结果 B组可有效标记大鼠MSCs,普鲁士蓝染色阳性率100%,无细胞外铁产生,铁颗粒分布于溶酶体内。4组间台盼蓝拒染率差异无统计学意义(P>0.05);体外MR GRE T2*WI序列可检测到1×104个标记细胞。结论使用超低微浓度菲立磁10.00μg/ml与鱼精蛋白1.20μg/ml可有效标记大鼠MSCs,体外MR可检测到1×104个标记细胞。